IP Library Granted Patent US 11,753,510
Granted Patent B2
US 11,753,510 · App. 17/597,430 · Granted Sep 12, 2023

Biodegradable composite material having improved mechanical properties using natural polymer nanofiber aqueous dispersion and method of producing the same

Inventors: Sung Yeon Hwang (Daejeon, KR); Jeyoung Park (Daejeon, KR); Dong Yeop Oh (Daejeon, KR); Tae Ho Kim (Daejeon, KR); Si Gyeong Lee (Daejeon, KR); Myung Suk Shin (Daejeon, KR); Jong Geon Jegal (Daejeon, KR)
Assignee: Korea Research Institute of Chemical Technology
C08J5/045C08G63/12C08G63/81C08K7/02C08G2230/00C08J2367/02C08K2201/005C08K2201/011C08K2201/018
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Quick Facts
Patent No.
US 11,753,510
App. No.
17/597,430
Granted
Sep 12, 2023
Kind
B2
Abstract

A biodegradable composite material which is produced by polymerizing a mixture of an aqueous dispersion of a natural polymer nanofiber including any one or more of a chitin nanofiber and a cellulose nanofiber, a dicarboxylic acid or a derivative thereof, and a diol. The biodegradable composite material has excellent biodegradable and mechanical properties.

Claims (63)

1. A biodegradable composite material produced by polymerizing a mixture including:

an aqueous dispersion of a natural polymer nanofiber including any one or more selected from the group consisting of a chitin nanofiber and a cellulose nanofiber;

a dicarboxylic acid or a derivative thereof; and

a diol,

wherein an amount of the natural polymer nanofiber in the aqueous dispersion of the natural polymer nanofiber is 0.05 to 0.5 wt % based on a total of 100 wt % of the biodegradable composite material.

2. The biodegradable composite material of claim 1 , wherein a concentration of the natural polymer nanofiber in the aqueous dispersion of the natural polymer nanofiber is 0.1 to 50 wt %%, based on a total of 100 wt % of the aqueous dispersion of the natural polymer nanofiber.

3. The biodegradable composite material of claim 1 , wherein the natural polymer nanofiber has a diameter of 1 to 200 nm and a length of 100 nm to 100 μm.

4. The biodegradable composite material of claim 1 , wherein the biodegradable composite material is produced by polymerizing the mixture further comprising:

any one or more selected from the group consisting of a tri- or higher functional alcohol; a tri- or higher functional carboxylic acid or a derivative thereof; and a tri- or higher functional hydroxy acid or a derivative thereof.

5. The biodegradable composite material of claim 1 , wherein the biodegradable composite material satisfies the following Equation 1:

TS

1

TS

0

×

100

110

(

%

)

[

Equation

1

]

wherein TS 1 is a tensile strength of the biodegradable composite material, and TS 0 is a tensile strength of a material obtained by polymerizing the mixture without the aqueous dispersion of the natural polymer nanofiber.

6. The biodegradable composite material of claim 1 , wherein the biodegradable composite material satisfies the following Equation 2:

TT

1

TT

0

×

100

110

(

%

)

[

Equation

2

]

wherein TT 1 is a tear strength of the biodegradable composite material, and TT 0 is a tear strength of a material obtained by polymerizing the mixture without the aqueous dispersion of the natural polymer nanofiber.

7. A method of producing a biodegradable composite material, the method comprising:

preparing a mixed dispersion including an aqueous dispersion of a natural polymer nanofiber including any one or more selected from the group consisting of a chitin nanofiber and a cellulose nanofiber, a dicarboxylic acid or a derivative thereof, and a diol; and

polymerizing the mixed dispersion

wherein an amount of the natural polymer nanofiber in the aqueous dispersion of the natural polymer nanofiber is 0.05 to 0.5 wt % based on a total of 100 wt % of the biodegradable composite material.

8. The method of producing a biodegradable composite material of claim 7 , wherein the mixed dispersion further comprises any one or more selected from the group consisting of a tri- or higher functional alcohol; a tri- or higher functional carboxylic acid or a derivative thereof; and a tri- or higher functional hydroxy acid or a derivative thereof.

9. The method of producing a biodegradable composite material of claim 7 , wherein the preparing of the mixed dispersion includes:

preparing a slurry including the dicarboxylic acid or the derivative thereof and the diol;

homogenizing the slurry; and

mixing the homogenized slurry with the aqueous dispersion of the natural polymer nanofiber including any one or more selected from the group consisting of the chitin nanofiber and the cellulose nanofiber.

10. A method of producing a biodegradable composite material, the method comprising:

preparing a mixed dispersion including an aqueous dispersion of a natural polymer nanofiber including any one or more selected from the group consisting of a chitin nanofiber and a cellulose nanofiber, a first dicarboxylic acid or a derivative thereof, and a first diol;

subjecting the mixed dispersion to an esterification or transesterification reaction to form an oligomer; and

further introducing a second dicarboxylic acid or a derivative thereof and a second diol to the oligomer and performing polymerization,

wherein an amount of the natural polymer nanofiber in the aqueous dispersion of the natural polymer nanofiber is 0.05 to 0.5 wt % based on a total of 100 wt % of the biodegradable composite material.

Assignments (3)
CHANGE OF NAME Recorded Apr 26, 2024
From: ECOVANCE CO. LTD.
To: SK LEAVEO CO., LTD.
Reel/Frame 067244/0773 →
LICENSE Recorded Mar 29, 2022
From: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY
To: ECOVANCE CO. LTD.
Reel/Frame 059431/0135 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2022
From: HWANG, SUNG YEON; PARK, JEYOUNG; OH, DONG YEOP; KIM, TAE HO; LEE, SI GYEONG; SHIN, MYUNG SUK; JEGAL, JONG GEON
To: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY
Reel/Frame 058582/0715 →
Priority Claims (1)
KR 10-2019-0083851 · Jul 11, 2019 · national
Continuity (1)
Related Publication 20220282048A1 · Sep 8, 2022